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Titlebook: Defects, Fracture and Fatigue; Proceedings of the S G. C. Sih,J. W. Provan Conference proceedings 1983 Martinus Nijhoff Publishers, The Hag

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Diagnosis in Otorhinolaryngologystrain reversal from maximum tension has been established as an indication of fatigue damage and very early microcrack initiation. Finally, the Coffin-Manson relation for microcrack initiation has been evaluated for iron and deviations from the relation discussed.
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Fatigue Softening in Precipitation Hardened Copper-Cobalt Single CrystalsBs form also gradually at stress amplitudes around τ. where τ. is the amplitude after the softening process has ceased in a strain controlled experiment. At stress amplitude close to the CRSS micro-PSBs are found which may also lead to failure in a high cycle experiment. From these results conclusions for polycrystals are drawn.
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Intergranular Fracture Criteria and Interfacial Thermodynamic Propertiesough to allow full adsorption equilibrium. An atomistic model has been developed in order to evaluate the interfacial potential at ordinary temperatures. The prediction of the model is in very good agreement with the experimental observations on the embrittlement of Cu by Bi.
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Fatigue Crack Initiation in Ironstrain reversal from maximum tension has been established as an indication of fatigue damage and very early microcrack initiation. Finally, the Coffin-Manson relation for microcrack initiation has been evaluated for iron and deviations from the relation discussed.
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The Behavior of Dislocations and the Formation of Wall Structures Observed by in Situ High Voltage E surface markings, i.e., the persistent slip bands (PSBs) during the cyclic deformation of Cu-2at%Al single crystals by carrying out in situ fatigue experiments in our 1000 kV HVEM in order to obtain the information useful for elucidating the formation mechanism of the wall structure and the PSBs.
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Dislocation Dynamics in Aluminum and in Aluminum-Based Alloys Investigated by TEM and NMR Techniquesf nuclear magnetic resonance techniques. Since the process of dislocation motion consists of atomic movements nuclear magnetic resonance techniques offer a possibility to determine the manner in which dislocations progress through the solid as a function of time. The spin lattice relaxation rate in
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